Publication | Open Access
Tuning laser-induced band gaps in graphene
250
Citations
31
References
2011
Year
Graphene NanomeshesGraphene Quantum DotEngineeringPhysicsOptical PropertiesNanoelectronicsFloquet TheoryApplied PhysicsGraphene FiberGrapheneLaser FieldGraphene NanoribbonLaser PolarizationLaser-induced Band GapsNanophotonics
Could a laser field lead to the much sought-after tunable band gaps in graphene? By using Floquet theory combined with Green's functions techniques, we predict that a laser field in the mid-infrared range can produce observable band gaps in the electronic structure of graphene. Furthermore, we show how they can be tuned by using the laser polarization. Our results could serve as a guidance to design optoelectronic nanodevices.
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